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1.
Food Chem ; 447: 139018, 2024 Jul 30.
Article in English | MEDLINE | ID: mdl-38503067

ABSTRACT

Developing an accurate, cost-effective, reliable, and stable glucose detection sensor for the food industry poses a significant yet challenging endeavor. Herein, we present a silver nanoparticle-decorated titanium dioxide nanoribbon array on titanium plate (Ag@TiO2/TP) as an efficient electrode for non-enzymatic glucose detection in alkaline environments. Electrochemical evaluations of the Ag@TiO2/TP electrode reveal a broad linear response range (0.001 mM - 4 mM), high sensitivity (19,106 and 4264 µA mM-1 cm-2), rapid response time (6 s), and a notably low detection limit (0.18 µM, S/N = 3). Moreover, its efficacy in measuring glucose in beverage samples shows its practical applicability. The impressive performance and structural benefits of the Ag@TiO2/TP electrode highlight its potential in advancing electrochemical sensors for small molecule detection.


Subject(s)
Biosensing Techniques , Metal Nanoparticles , Nanotubes, Carbon , Metal Nanoparticles/chemistry , Electrochemical Techniques , Silver , Glucose/chemistry , Electrodes
2.
Int Immunopharmacol ; 128: 111548, 2024 Feb 15.
Article in English | MEDLINE | ID: mdl-38244518

ABSTRACT

Dendritic cells (DCs) are asserted as the most potent antigen-presenting cells (APCs) that orchestrate both innate and adaptive immunity, being extremely effective in the induction of robust anti-cancer T cell responses. Hence, the modulation of DCs function represents an attractive target for improving cancer immunotherapy efficacy. A better understanding of the immunobiology of DCs, the interaction among DCs, immune effector cells and tumor cells in tumor microenvironment (TME) and the latest advances in biomedical engineering technology would be required for the design of optimal DC-based immunotherapy. In this review, we focus on elaborating the immunobiology of DCs in healthy and cancer environments, the recent advances in the development of enhancing endogenous DCs immunocompetence via immunomodulators as well as DC-based vaccines. The rapidly developing field of applying nanotechnology to improve DC-based immunotherapy is also highlighted.


Subject(s)
Cancer Vaccines , Neoplasms , Humans , Dendritic Cells , Immunotherapy , Adaptive Immunity , Adjuvants, Immunologic , Tumor Microenvironment
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